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面向控制的柴油機進排氣氧氣質量分數估計方法研究
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國防科工局基礎產品創(chuàng)新計劃項目(DEDP1004)和北京理工大學?;痦椖浚?030012211428)


Control Oriented Research on Method of Intake and Exhaust Oxygen Mass Fraction Estimation for Diesel Engine
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    摘要:

    在構建高壓回路EGR渦輪增壓柴油機氣路系統(tǒng)動態(tài)模型基礎上,,設計了柴油機進排氣氧氣質量分數的龍貝格觀測器,實現(xiàn)對柴油機進排氣氧氣質量分數的估計;利用李雅普諾夫穩(wěn)定性原理對設計的觀測器進行了穩(wěn)定性分析,,分析結果顯示,設計的進排氣氧氣質量分數觀測器滿足穩(wěn)定性要求,可以用于進排氣氧氣質量分數的估計;由于進氣歧管不宜安裝寬裕氧傳感器(UEGO),,進氣氧氣質量分數難以測到,本文推導出一種進氣氧氣質量分數的計算方法,,并對推導出的計算方法進行了仿真對比驗證,,結果表明,該計算方法能夠對進氣氧氣質量分數進行比較精確的計算估計,;最后,,對設計的進排氣氧氣質量分數觀測器進行了仿真和試驗驗證,,結果表明,設計的觀測器可〖JP3〗以對柴油機的進排氣氧氣質量分數進行準確估計,,為基于進排氣氧氣質量分數的柴油機氣路控制器設計奠定了基礎,。

    Abstract:

    An innovative oxygen mass fraction estimation method for turbocharged diesel engine was described. Based on the dynamic model of turbocharged diesel engine with high pressure exhaust gas recirculation (EGR), the Luenberger observer of the intake and exhaust oxygen mass fraction was developed. By using the data acquired from the standard sensors equipped on the engine, the intake and exhaust oxygen mass fraction can be estimated by using the Luenberger observer. The convergence stability of the observer was proved through a Lyapunov analysis, the results show that the observer can meet the stability requirements. It can be used for estimating the intake and exhaust oxygen mass fraction. For various reasons, it is not suitable to install universal exhaust gas oxygen (UEGO) sensor on the intake manifold; the intake oxygen mass fraction needs to be obtained by other means. The calculated algorithm of the intake oxygen mass fraction was proposed and the method was verified by using the GTPower simulation data. The maximum error was less than 1.3%, the results show that the calculation method was able to accurately calculate the intake oxygen mass fraction. Finally, the test bench of the YC4E170-31 diesel engine was built. The exhaust oxygen fraction can be calculated by using the UEGO sensor which was installed at the exhaust manifold. The observer of the intake and exhaust oxygen mass fraction was verified against the experimental data and simulation data, the results show that the observer can accurately estimate the intake and exhaust oxygen mass fraction, and the estimation error was in a reasonable range, which laid a foundation for air path controller design based on intake and exhaust oxygen mass fraction.

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董天普,張付軍,劉波瀾,柴智剛,劉盼.面向控制的柴油機進排氣氧氣質量分數估計方法研究[J].農業(yè)機械學報,2016,47(3):354-360. Dong Tianpu, Zhang Fujun, Liu Bolan, Chai Zhigang, Liu Pan. Control Oriented Research on Method of Intake and Exhaust Oxygen Mass Fraction Estimation for Diesel Engine[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(3):354-360.

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  • 收稿日期:2015-08-31
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  • 在線發(fā)布日期: 2016-03-10
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